US8305707B2 - Coupling structure using stud - Google Patents

Coupling structure using stud Download PDF

Info

Publication number
US8305707B2
US8305707B2 US12/186,665 US18666508A US8305707B2 US 8305707 B2 US8305707 B2 US 8305707B2 US 18666508 A US18666508 A US 18666508A US 8305707 B2 US8305707 B2 US 8305707B2
Authority
US
United States
Prior art keywords
stud
insertion hole
screw
hole
base plate
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related, expires
Application number
US12/186,665
Other versions
US20090073842A1 (en
Inventor
Yu-Sung Kim
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Seagate Technology International
Original Assignee
Seagate Technology International
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Seagate Technology International filed Critical Seagate Technology International
Assigned to SAMSUNG ELECTRONICS CO., LTD. reassignment SAMSUNG ELECTRONICS CO., LTD. ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: KIM, YU-SUNG
Publication of US20090073842A1 publication Critical patent/US20090073842A1/en
Assigned to SEAGATE TECHNOLOGY INTERNATIONAL reassignment SEAGATE TECHNOLOGY INTERNATIONAL ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: SAMSUNG ELECTRONICS CO., LTD.
Assigned to SEAGATE TECHNOLOGY INTERNATIONAL reassignment SEAGATE TECHNOLOGY INTERNATIONAL ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS). Assignors: SAMSUNG ELECTRONICS CO., LTD.
Application granted granted Critical
Publication of US8305707B2 publication Critical patent/US8305707B2/en
Expired - Fee Related legal-status Critical Current
Adjusted expiration legal-status Critical

Links

Images

Classifications

    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B33/00Constructional parts, details or accessories not provided for in the other groups of this subclass
    • G11B33/02Cabinets; Cases; Stands; Disposition of apparatus therein or thereon
    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B33/00Constructional parts, details or accessories not provided for in the other groups of this subclass
    • G11B33/12Disposition of constructional parts in the apparatus, e.g. of power supply, of modules
    • G11B33/121Disposition of constructional parts in the apparatus, e.g. of power supply, of modules the apparatus comprising a single recording/reproducing device
    • HELECTRICITY
    • H05ELECTRIC TECHNIQUES NOT OTHERWISE PROVIDED FOR
    • H05KPRINTED CIRCUITS; CASINGS OR CONSTRUCTIONAL DETAILS OF ELECTRIC APPARATUS; MANUFACTURE OF ASSEMBLAGES OF ELECTRICAL COMPONENTS
    • H05K7/00Constructional details common to different types of electric apparatus
    • H05K7/14Mounting supporting structure in casing or on frame or rack
    • H05K7/1417Mounting supporting structure in casing or on frame or rack having securing means for mounting boards, plates or wiring boards
    • H05K7/142Spacers not being card guides

Definitions

  • the present general inventive concept relates to a hard disk drive, and more particularly, to a structure of coupling a cover plate and a printed circuit board to a base plate of a hard disk drive using a stud.
  • a hard disk drive which is a data storage device, records data on a disk or reproduces data stored in the disk using a read/write head.
  • the read/write head moves to a desired position by an actuator in the state of floating at a predetermined height from a recording surface of a rotating disk.
  • a portable electronic apparatus such as a portable multimedia player (PMP), a personal digital assistant (PDA), a camcorder, an MP3 player, or a navigation device
  • PMP portable multimedia player
  • PDA personal digital assistant
  • camcorder an MP3 player
  • a navigation device has a high speed and capacity
  • the portable electronic apparatus has employed a hard disk drive capable of storing a larger amount of data.
  • the portable electronic apparatus needs to have slim and lightweight properties for enhancing the portability as well as the high speed and capacity. Therefore, a small-sized disk drive that uses a disk with a very small diameter, for example, ranging from 1.8 inches, 1.3 inches, 1 inch, or 0.85 inches, is employed in the portable electronic apparatus.
  • FIG. 1 is a cross-sectional view illustrating a coupling structure of a conventional hard disk drive.
  • a hard disk drive 10 includes a disk, a spindle motor rotating the disk, a read/write head, and an actuator, which are surrounded with and protected by a base 11 and a cover 12 .
  • the actuator moves the read/write head to a desired position over the disk.
  • the cover 12 is coupled to an upper surface of the base 11 through a first screw 21 , and a printed circuit board (PCB) 13 and a protective cover 14 are coupled to a lower surface of the base 11 through a second screw 31 .
  • PCB printed circuit board
  • first and second studs 22 and 32 having screw holes 23 and 33 , respectively, are used in order to couple the first and second screws 21 and 31 to the base 11 .
  • the first stud 22 is pressed and fixed to a first insertion hole 24 formed in the base 11
  • the second stud 32 is pressed and fixed to a second insertion hole 34 adjacent to the first pressing hole 24 .
  • the first stud 22 for coupling the cover 12 to the base 11 and the second stud 32 for coupling the PCB 13 to the base 11 are separately used, thus increasing the fabrication cost.
  • the first and second studs 22 and 32 mounted in the respective coupling positions of the base 11 occupy a large space.
  • the present general inventive concept provides a coupling structure of a hard disk drive that can couple a cover plate and a PCB to a respective coupling position of a base plate using one stud.
  • a coupling structure of a hard disk drive of coupling a cover plate and a printed circuit board (PCB) to a base plate of the hard disk drive including: a stud insertion hole formed in the base plate; a stud including a first screw coupling hole formed in an upper portion and a second screw coupling hole formed in a lower portion, the stud being inserted into the stud insertion hole to be fixed to the base plate, a first screw insert hole formed at a position of the cover plate disposed over the base plate corresponding to the stud; a first screw inserted into the first screw insert hole to be coupled to the first screw coupling hole so that the cover plate is coupled to the base plate; a second screw insert hole formed at a position of the PCB disposed under the base plate corresponding to the stud; a second screw inserted into the second screw hole to be coupled to the second screw coupling hole so that the PCB is coupled to the base plate.
  • PCB printed circuit board
  • Center lines of the first screw coupling hole and the second screw coupling hole may correspond to a center line of the stud.
  • a partition may be formed between the first and second screw coupling holes.
  • a first recess may be formed around the first screw insert hole of the cover plate, and a head portion of the first screw may be inserted into the first recess.
  • a sealing tape may be formed on an outer surface of the cover plate so as to cover the first recess.
  • a protective cover may be disposed under the base plate to cover and protect the PCB, a second screw insert hole may be formed at a position of the protective cover corresponding to the stud, and the second screw may be inserted into the second screw insert hole formed in the protective cover and the second screw insert hole formed in the PCB to be coupled to the second screw coupling hole of the stud so that the protective cover and the PCB are coupled together to the base plate.
  • a second recess may be formed around the second screw insert hole of the protective cover and a head portion of the second screw may be inserted into the second recess.
  • the stud may be formed of stainless steel.
  • a coupling structure of a hard disk drive including: a cover plate including at least one first recession having a first insertion hole to receive a screw; a base plate including at least one stud insertion hole; a stud including a first screw coupling hole formed in an upper portion to align with the first insertion hole and a second screw coupling hole formed in a stepped lower portion thereof to align with and partially extend through the stud insertion hole to be fastened to the base plate; and a printed circuit board (PCB) disposed below the base plate and having a second insertion hole to align with the first insertion hole and the stud insertion hole such that when a first screw is inserted into the first insertion hole and a second screw is inserted into the second insertion hole, a center of the first and second screws align along a same axis.
  • PCB printed circuit board
  • the coupling structure may further include a protective cover to extend along a length of an outer side of the PCB to protect the PCB, the protective cover including a second recession having a third insertion hole formed therein to receive the second screw before the second insertion hole receives the second screw such that the second screw secures both the PCB and the protective cover to the stepped lower portion of the stud.
  • the first and second recessions can be formed to a depth such that first and second screws inserted therein, respectively, remain below the surface of the cover plate and the protective cover, respectively.
  • the first screw insertion hole, the stud insertion hole and the second screw insertion hole can have a common central axis.
  • the first screw insertion hole and the second screw insertion hole can have a common axis and can be separated from each other by a partition portion of the stud.
  • a stud device usable to assemble a storage device including: a first side including a first screw insertion hole to receive a first screw to fasten a cover plate to the stud; and a second side opposite the first side, the second side including: a stepped portion to be frictionally inserted into a base plate of the storage device to connect the cover plate to the base plate, and a second screw insertion hole to receive a second screw to fasten a printed circuit board to the stud and adjacent to the base plate.
  • FIG. 1 is a cross-sectional view illustrating a coupling structure of a conventional hard disk drive
  • FIG. 2 is an exploded perspective view illustrating a coupling structure of a hard disk drive according to an embodiment of the present general inventive concept
  • FIG. 3 is a cross-sectional view illustrating a coupling portion in the hard disk drive of FIG. 2 , according to an embodiment of the present general inventive concept.
  • FIG. 2 is an exploded perspective view illustrating a coupling structure of a hard disk drive 100 according to an embodiment of the present general inventive concept.
  • FIG. 3 is a cross-sectional view illustrating a coupling portion in the hard disk drive 100 of FIG. 2 , according to an embodiment of the present general inventive concept.
  • the hard disk drive 100 includes a spindle motor 120 , a disk 122 mounted on the spindle motor 120 to rotate, and an actuator 130 moving a read/write head to record and reproduce data to and from a predetermined position.
  • the actuator 130 includes a swing arm 132 rotatably coupled to an actuator pivot 131 , a suspension assembly 133 mounted on an end portion of the swing arm 132 , and a voice coil motor (VCM) 134 to rotate the swing arm 132 .
  • the suspension assembly 133 supports a slider where the read/write head is mounted such that the slider is elastically biased with respect to a surface of the disk 122 .
  • the VCM 134 is controlled by a servo control system and rotates the swing arm 132 of the actuator 130 in a direction according to Fleming's left hand rule by the interaction of a current applied to a VCM coil and a magnetic field formed by a magnet. That is, when power of the hard disk drive 100 is turned on and the disk 122 rotates, the VCM 134 rotates the swing arm 132 in a counterclockwise direction to move the read/write head over a recording surface of the disk 122 . On the other hand, when power of the hard disk drive 100 is turned off and the disk 122 stops rotating, the VCM 134 rotates the swing arm 132 in a clockwise direction to move the read/write head out of the circumference of the disk 122 . The read/write head having moved out of the circumference area of the recording surface of the disk 122 is parked in a parking ramp 135 disposed outside of the circumference of the disk 122 .
  • the spindle motor 120 and the actuator 130 are mounted on a base plate 111 , and a cover plate 112 is coupled to an upper portion of the base plate 111 to cover the disk 122 , the actuator 130 , and the like.
  • a PCB 113 is coupled to a lower portion of the base plate 111 to operate the hard disk drive 100 .
  • the PCB 113 may be protected by a protective cover 114 .
  • the base plate 111 and the cover plate 112 may be fabricated using a metal plate, for example, by pressing a stainless steel plate.
  • a plurality of reinforcing grooves 116 may be formed in a concentric shape on the cover plate 112 in order to increase the rigidity thereof.
  • the protective cover 114 may be also fabricated using a metal plate, for example, by pressing a stainless steel plate.
  • three or four studs 140 are used in order to couple the cover plate 112 and the PCB 113 to the base plate 111 .
  • the protective cover 114 may be also coupled to the base plate 111 using the studs 140 .
  • the three or four studs 140 can be disposed at an edge portion of the base plate 111 .
  • the studs 140 may be fabricated using metal, for example, stainless steel.
  • Each of the studs 140 is inserted into a stud insertion hole 156 penetrating the base plate 111 to be fixed to the base plate 111 , thus preventing leakage through the stud insertion hole 156 .
  • a first screw coupling hole 141 is formed to a predetermined depth on an upper surface of the stud 140
  • a second screw coupling hole 142 is formed to a predetermined depth on a lower surface of the stud 140 .
  • Centerlines of the first and second screw coupling holes 141 and 142 correspond to a centerline C of the stud 140 .
  • a partition 144 may be formed between the first and second screw coupling holes 141 and 142 to prevent leakage through the first and second screw coupling holes 141 and 142 .
  • a first screw insert hole 153 into which the first screw 151 is inserted is formed at a position of the cover plate 112 corresponding to the stud 140 .
  • a first recess 157 may be formed around the first screw insert hole 153 of the cover plate 112 , and a head portion of the first screw 151 may be inserted into the first recess 157 . In this case, the head portion of the first screw 151 does not protrude out beyond an outer surface of the cover plate 112 .
  • a sealing tape 161 may be attached to the outer surface of the cover plate 112 so as to cover the first recess 157 , thereby preventing leakage through the first screw insert hole 153 .
  • a second screw insert hole 155 into which the second screw 152 is inserted is formed at a position of the PCB 113 corresponding to the stud 140 .
  • the PCB 113 is firmly coupled to the bask plate 111 in the state where a portion around the second screw insert hole 155 of the PCB 113 is in contact with a lower surface of the stud 140 .
  • a lower portion of the stud 140 protrudes to a predetermined height under and through the base plate 111 , and thus an interval between the base plate 111 and the PCB 113 is maintained by the protruding height.
  • the protective cover 114 may be coupled to the base plate 111 so as to cover and protect the PCB 113 .
  • a second screw insert hole 154 into which the second screw 152 is inserted is formed at a position of the protective cover 114 corresponding to the stud 140 .
  • a second recess 158 may be formed around the second screw insert hole 154 of the protective cover 114 , and a head portion of the second screw 152 may be inserted into the second recess 158 . In this case, the head portion of the second screw 152 does not protrude out beyond an outer surface of the protective cover 114 .
  • the coupling structure of the hard disk drive 100 of the present general inventive concept since the screw coupling holes 141 and 142 are formed in upper and lower portions of the stud 140 , respectively, the cover plate 112 and the PCB 113 can be coupled to the base plate 111 using only the one stud 140 . Therefore, the number of the studs 140 used to couple the hard disk drive 100 is reduced to half of the conventional structure. In addition, since the one stud 140 is mounted at each coupling position of the base plate 111 , a mounting space of the stud 140 decreases, thus allowing for fabricating of more compact-sized hard disk drives.
  • a coupling structure of a hard disk drive of the present general inventive concept since a cover plate and a PCB can be coupled to respective coupling positions of a base plate using only one stud, the number of studs used to couple the hard disk drive is reduced to half of the conventional structure, thereby decreasing fabrication costs. In addition, since only the one stud is mounted in each coupling position of the base plate, a mounting space for studs can be decreased.

Landscapes

  • Engineering & Computer Science (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Moving Of Heads (AREA)
  • Mounting Of Printed Circuit Boards And The Like (AREA)

Abstract

A coupling structure of a hard disk drive using a stud. The coupling structure includes a stud insertion hole formed in the base plate, a stud, a first screw insert hole, a first screw, a second screw insert hole, and a second screw. The stud includes a first screw coupling hole formed in an upper portion and a second screw coupling hole formed in a lower portion, and is inserted into the stud insertion hole to be fixed to the base plate. The first screw insert hole is formed at a position of the cover plate disposed over the base plate corresponding to the stud. The first screw is inserted into the first screw insert hole to be coupled to the first screw coupling hole so that the cover plate is coupled to the base plate. The second screw insert hole is formed at a position of the PCB disposed under the base plate corresponding to the stud. The second screw is inserted into the second screw hole to be coupled to the second screw coupling hole so that the PCB is coupled to the base plate. A protective cover is disposed under the base plate to cover and protect the PCB. The protective cover is also coupled to the base plate by the second screw coupled to the second screw coupling hole of the stud.

Description

CROSS-REFERENCE TO RELATED APPLICATIONS
This application claims the benefit of Korean Patent Application No. 10-2007-0094191, filed on Sep. 17, 2007, in the Korean Intellectual Property Office, the disclosure of which is incorporated herein in its entirety by reference.
BACKGROUND OF THE INVENTION
1. Field of the Invention
The present general inventive concept relates to a hard disk drive, and more particularly, to a structure of coupling a cover plate and a printed circuit board to a base plate of a hard disk drive using a stud.
2. Description of the Related Art
A hard disk drive (HDD), which is a data storage device, records data on a disk or reproduces data stored in the disk using a read/write head. For this purpose, the read/write head moves to a desired position by an actuator in the state of floating at a predetermined height from a recording surface of a rotating disk.
Recently, as a portable electronic apparatus such as a portable multimedia player (PMP), a personal digital assistant (PDA), a camcorder, an MP3 player, or a navigation device has a high speed and capacity, the portable electronic apparatus has employed a hard disk drive capable of storing a larger amount of data. However, the portable electronic apparatus needs to have slim and lightweight properties for enhancing the portability as well as the high speed and capacity. Therefore, a small-sized disk drive that uses a disk with a very small diameter, for example, ranging from 1.8 inches, 1.3 inches, 1 inch, or 0.85 inches, is employed in the portable electronic apparatus.
FIG. 1 is a cross-sectional view illustrating a coupling structure of a conventional hard disk drive.
Referring to FIG. 1, a hard disk drive 10 includes a disk, a spindle motor rotating the disk, a read/write head, and an actuator, which are surrounded with and protected by a base 11 and a cover 12. The actuator moves the read/write head to a desired position over the disk. The cover 12 is coupled to an upper surface of the base 11 through a first screw 21, and a printed circuit board (PCB) 13 and a protective cover 14 are coupled to a lower surface of the base 11 through a second screw 31.
In order to reduce the size and thickness of the small-sized hard disk drive 10 as much as possible, the base 11 and the cover 12 are fabricated by pressing a thin metal plate. Therefore, first and second studs 22 and 32 having screw holes 23 and 33, respectively, are used in order to couple the first and second screws 21 and 31 to the base 11. The first stud 22 is pressed and fixed to a first insertion hole 24 formed in the base 11, and the second stud 32 is pressed and fixed to a second insertion hole 34 adjacent to the first pressing hole 24.
As described above, in the conventional hard disk drive 10, the first stud 22 for coupling the cover 12 to the base 11 and the second stud 32 for coupling the PCB 13 to the base 11 are separately used, thus increasing the fabrication cost. In addition, the first and second studs 22 and 32 mounted in the respective coupling positions of the base 11 occupy a large space.
SUMMARY OF THE INVENTION
The present general inventive concept provides a coupling structure of a hard disk drive that can couple a cover plate and a PCB to a respective coupling position of a base plate using one stud.
Additional aspects and utilities of the present general inventive concept will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the general inventive concept.
The foregoing and/or other aspects and utilities of the present general inventive concept are achieved by providing a coupling structure of a hard disk drive of coupling a cover plate and a printed circuit board (PCB) to a base plate of the hard disk drive, including: a stud insertion hole formed in the base plate; a stud including a first screw coupling hole formed in an upper portion and a second screw coupling hole formed in a lower portion, the stud being inserted into the stud insertion hole to be fixed to the base plate, a first screw insert hole formed at a position of the cover plate disposed over the base plate corresponding to the stud; a first screw inserted into the first screw insert hole to be coupled to the first screw coupling hole so that the cover plate is coupled to the base plate; a second screw insert hole formed at a position of the PCB disposed under the base plate corresponding to the stud; a second screw inserted into the second screw hole to be coupled to the second screw coupling hole so that the PCB is coupled to the base plate.
Center lines of the first screw coupling hole and the second screw coupling hole may correspond to a center line of the stud. A partition may be formed between the first and second screw coupling holes.
A first recess may be formed around the first screw insert hole of the cover plate, and a head portion of the first screw may be inserted into the first recess. In this case, a sealing tape may be formed on an outer surface of the cover plate so as to cover the first recess.
A protective cover may be disposed under the base plate to cover and protect the PCB, a second screw insert hole may be formed at a position of the protective cover corresponding to the stud, and the second screw may be inserted into the second screw insert hole formed in the protective cover and the second screw insert hole formed in the PCB to be coupled to the second screw coupling hole of the stud so that the protective cover and the PCB are coupled together to the base plate.
A second recess may be formed around the second screw insert hole of the protective cover and a head portion of the second screw may be inserted into the second recess.
The stud may be formed of stainless steel.
The foregoing and/or other aspects and utilities of the present general inventive concept can also be achieved by providing a coupling structure of a hard disk drive, including: a cover plate including at least one first recession having a first insertion hole to receive a screw; a base plate including at least one stud insertion hole; a stud including a first screw coupling hole formed in an upper portion to align with the first insertion hole and a second screw coupling hole formed in a stepped lower portion thereof to align with and partially extend through the stud insertion hole to be fastened to the base plate; and a printed circuit board (PCB) disposed below the base plate and having a second insertion hole to align with the first insertion hole and the stud insertion hole such that when a first screw is inserted into the first insertion hole and a second screw is inserted into the second insertion hole, a center of the first and second screws align along a same axis.
The coupling structure may further include a protective cover to extend along a length of an outer side of the PCB to protect the PCB, the protective cover including a second recession having a third insertion hole formed therein to receive the second screw before the second insertion hole receives the second screw such that the second screw secures both the PCB and the protective cover to the stepped lower portion of the stud.
The first and second recessions can be formed to a depth such that first and second screws inserted therein, respectively, remain below the surface of the cover plate and the protective cover, respectively.
The first screw insertion hole, the stud insertion hole and the second screw insertion hole can have a common central axis.
The first screw insertion hole and the second screw insertion hole can have a common axis and can be separated from each other by a partition portion of the stud.
The foregoing and/or other aspects and utilities of the present general inventive concept can also be achieved by providing a stud device usable to assemble a storage device, including: a first side including a first screw insertion hole to receive a first screw to fasten a cover plate to the stud; and a second side opposite the first side, the second side including: a stepped portion to be frictionally inserted into a base plate of the storage device to connect the cover plate to the base plate, and a second screw insertion hole to receive a second screw to fasten a printed circuit board to the stud and adjacent to the base plate.
BRIEF DESCRIPTION OF THE DRAWINGS
The above and other features and utilities of the present general inventive concept will become more apparent by describing in detail exemplary embodiments thereof with reference to the attached drawings in which:
FIG. 1 is a cross-sectional view illustrating a coupling structure of a conventional hard disk drive;
FIG. 2 is an exploded perspective view illustrating a coupling structure of a hard disk drive according to an embodiment of the present general inventive concept; and
FIG. 3 is a cross-sectional view illustrating a coupling portion in the hard disk drive of FIG. 2, according to an embodiment of the present general inventive concept.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
Reference will now be made in detail to the embodiments of the present general inventive concept, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to the like elements throughout. The embodiments are described below in order to explain the present general inventive concept by referring to the figures.
FIG. 2 is an exploded perspective view illustrating a coupling structure of a hard disk drive 100 according to an embodiment of the present general inventive concept. FIG. 3 is a cross-sectional view illustrating a coupling portion in the hard disk drive 100 of FIG. 2, according to an embodiment of the present general inventive concept.
Referring to FIGS. 2 and 3, the hard disk drive 100 includes a spindle motor 120, a disk 122 mounted on the spindle motor 120 to rotate, and an actuator 130 moving a read/write head to record and reproduce data to and from a predetermined position. The actuator 130 includes a swing arm 132 rotatably coupled to an actuator pivot 131, a suspension assembly 133 mounted on an end portion of the swing arm 132, and a voice coil motor (VCM) 134 to rotate the swing arm 132. The suspension assembly 133 supports a slider where the read/write head is mounted such that the slider is elastically biased with respect to a surface of the disk 122.
The VCM 134 is controlled by a servo control system and rotates the swing arm 132 of the actuator 130 in a direction according to Fleming's left hand rule by the interaction of a current applied to a VCM coil and a magnetic field formed by a magnet. That is, when power of the hard disk drive 100 is turned on and the disk 122 rotates, the VCM 134 rotates the swing arm 132 in a counterclockwise direction to move the read/write head over a recording surface of the disk 122. On the other hand, when power of the hard disk drive 100 is turned off and the disk 122 stops rotating, the VCM 134 rotates the swing arm 132 in a clockwise direction to move the read/write head out of the circumference of the disk 122. The read/write head having moved out of the circumference area of the recording surface of the disk 122 is parked in a parking ramp 135 disposed outside of the circumference of the disk 122.
The spindle motor 120 and the actuator 130 are mounted on a base plate 111, and a cover plate 112 is coupled to an upper portion of the base plate 111 to cover the disk 122, the actuator 130, and the like. A PCB 113 is coupled to a lower portion of the base plate 111 to operate the hard disk drive 100. The PCB 113 may be protected by a protective cover 114.
The base plate 111 and the cover plate 112 may be fabricated using a metal plate, for example, by pressing a stainless steel plate. A plurality of reinforcing grooves 116 may be formed in a concentric shape on the cover plate 112 in order to increase the rigidity thereof. The protective cover 114 may be also fabricated using a metal plate, for example, by pressing a stainless steel plate.
In the present embodiment, as illustrated in FIG. 2, three or four studs 140 are used in order to couple the cover plate 112 and the PCB 113 to the base plate 111. The protective cover 114 may be also coupled to the base plate 111 using the studs 140. The three or four studs 140 can be disposed at an edge portion of the base plate 111. The studs 140 may be fabricated using metal, for example, stainless steel.
Each of the studs 140 is inserted into a stud insertion hole 156 penetrating the base plate 111 to be fixed to the base plate 111, thus preventing leakage through the stud insertion hole 156. A first screw coupling hole 141 is formed to a predetermined depth on an upper surface of the stud 140, and a second screw coupling hole 142 is formed to a predetermined depth on a lower surface of the stud 140. Centerlines of the first and second screw coupling holes 141 and 142 correspond to a centerline C of the stud 140. A partition 144 may be formed between the first and second screw coupling holes 141 and 142 to prevent leakage through the first and second screw coupling holes 141 and 142.
A first screw insert hole 153 into which the first screw 151 is inserted is formed at a position of the cover plate 112 corresponding to the stud 140. When the cover plate 112 is disposed on the base plate 111 and the first screw 151 is inserted into the first screw insert hole 153 and coupled to the first screw coupling hole 141 formed in the stud 140, the cover plate 112 is firmly coupled to the base plate 111 in the state where an inner surface of the cover plate 112 around the first screw insert hole 153 is in contact with an upper surface of the stud 140.
A first recess 157 may be formed around the first screw insert hole 153 of the cover plate 112, and a head portion of the first screw 151 may be inserted into the first recess 157. In this case, the head portion of the first screw 151 does not protrude out beyond an outer surface of the cover plate 112. A sealing tape 161 may be attached to the outer surface of the cover plate 112 so as to cover the first recess 157, thereby preventing leakage through the first screw insert hole 153.
A second screw insert hole 155 into which the second screw 152 is inserted is formed at a position of the PCB 113 corresponding to the stud 140. When the PCB 113 is disposed under the base plate 111, and the second screw 152 is inserted into the second screw insert hole 155 and coupled to the second screw coupling hole 142 formed in the stud 140, the PCB 113 is firmly coupled to the bask plate 111 in the state where a portion around the second screw insert hole 155 of the PCB 113 is in contact with a lower surface of the stud 140. Here, a lower portion of the stud 140 protrudes to a predetermined height under and through the base plate 111, and thus an interval between the base plate 111 and the PCB 113 is maintained by the protruding height.
As described above, the protective cover 114 may be coupled to the base plate 111 so as to cover and protect the PCB 113. A second screw insert hole 154 into which the second screw 152 is inserted is formed at a position of the protective cover 114 corresponding to the stud 140. When the PCB 113 and the protective 114 are disposed under the base plate 111, and the second screw 152 is inserted into the second screw insert holes 154 and 155 respectively formed in the protective cover 114 and the PCB 113 to be coupled to the second screw coupling hole 142, the protective cover 114 as well as the PCB 113 can be firmly coupled to the base plate 111. A second recess 158 may be formed around the second screw insert hole 154 of the protective cover 114, and a head portion of the second screw 152 may be inserted into the second recess 158. In this case, the head portion of the second screw 152 does not protrude out beyond an outer surface of the protective cover 114.
As described above, according to the coupling structure of the hard disk drive 100 of the present general inventive concept, since the screw coupling holes 141 and 142 are formed in upper and lower portions of the stud 140, respectively, the cover plate 112 and the PCB 113 can be coupled to the base plate 111 using only the one stud 140. Therefore, the number of the studs 140 used to couple the hard disk drive 100 is reduced to half of the conventional structure. In addition, since the one stud 140 is mounted at each coupling position of the base plate 111, a mounting space of the stud 140 decreases, thus allowing for fabricating of more compact-sized hard disk drives.
According to a coupling structure of a hard disk drive of the present general inventive concept, since a cover plate and a PCB can be coupled to respective coupling positions of a base plate using only one stud, the number of studs used to couple the hard disk drive is reduced to half of the conventional structure, thereby decreasing fabrication costs. In addition, since only the one stud is mounted in each coupling position of the base plate, a mounting space for studs can be decreased.
While the present general inventive concept has been particularly shown and described with reference to exemplary embodiments thereof, it will be understood by those of ordinary skill in the art that various changes in form and details may be made therein without departing from the spirit and scope of the present general inventive concept as defined by the following claims.

Claims (16)

1. A coupling structure of a hard disk comprising:
a stud insertion hole formed in a base plate;
a stud including a first coupling hole formed in an upper portion and a second coupling hole formed in a lower portion, the stud being inserted into the stud insertion hole;
a first insert hole formed at a position of a cover plate disposed over the base plate corresponding to the stud, wherein
the first insert hole is coupled to the first coupling hole so that the cover plate is coupled to the base plate; and
a second insert hole formed at a position of a printed circuit board (PCB) disposed under the base plate corresponding to the stud, wherein
the second hole is coupled to the second coupling hole so that the PCB is coupled to the base plate.
2. The coupling structure of claim 1, wherein centerlines of the first screw coupling hole and the second coupling hole correspond to a centerline of the stud.
3. The coupling structure of claim 1, wherein a partition is formed between the first and second screw coupling holes.
4. The coupling structure of claim 1, wherein a first recess is formed around the first screw insert hole of the cover plate, and a head portion of the of a first screw is inserted into the first recess.
5. The coupling structure of claim 4, wherein a sealing tape is formed on an outer surface of the cover plate so as to cover the first recess.
6. The coupling structure of claim 1, wherein a protective cover is disposed under the base plate to cover and protect the PCB,
a second insert hole is formed at a position of the protective cover corresponding to the stud, and
a second screw is inserted into the second insert hole formed in the protective cover and the second insert hole formed in the PCB to be coupled to the second coupling hole of the stud so that the protective cover and the PCB are coupled together to the base plate.
7. The coupling structure of claim 6, wherein a second recess is formed around the second insert hole of the protective cover and a head portion of the second screw is inserted into the second recess.
8. The coupling structure of claim 1, wherein the stud is formed of stainless steel.
9. A coupling structure of a hard disk drive comprising:
a cover plate including at least one first recession having a first insertion hole;
a base plate including at least one stud insertion hole;
a stud including a first coupling hole formed in an upper portion to align with the first insertion hole and a second coupling hole formed in a stepped lower portion thereof to align with and partially extend through the stud insertion hole to be fastened to the base plate; and
a printed circuit board (PCB) disposed below the base plate and having a second insertion hole to align with the first insertion hole and the stud insertion hole, wherein the first insertion hole and the second insertion hole are operable to align along a same axis.
10. The apparatus of claim 9, further comprising:
a protective cover to extend along a length of an outer side of the PCB to protect the PCB, the protective cover including a second recession having a third insertion hole formed therein to receive a second screw before the second insertion hole receives the second screw such that the second screw secures both the PCB and the protective cover to the stepped lower portion of the stud.
11. The coupling structure of claim 10, wherein the first and second recessions are formed to a depth such that first and second screws inserted therein, respectively, remain below the surface of the cover plate and the protective cover, respectively.
12. The coupling structure of claim 10, wherein the first insertion hole, the stud insertion hole and the second insertion hole have a common central axis.
13. The coupling structure of claim 10, wherein the first insertion hole and the second insertion hole have a common axis and are separated from each other by a partition portion of the stud.
14. A coupling structure of a hard disk comprising:
a first side including a first insertion hole to fasten a cover plate to the stud; and
a second side opposite the first side, the second side including:
a stepped portion to be frictionally inserted into a base plate of the storage device to connect the cover plate to the base plate, and
a second insertion hole to fasten a printed circuit board to the stud and adjacent to the base plate.
15. The coupling structure of claim 14, wherein the second insertion hole is formed along a same common axis with the first insertion hole.
16. The coupling structure of claim 15, further comprising:
a partition portion disposed between the first insertion hole and the second insertion hole.
US12/186,665 2007-09-17 2008-08-06 Coupling structure using stud Expired - Fee Related US8305707B2 (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
KR2007-94191 2007-09-17
KR10-2007-0094191 2007-09-17
KR1020070094191A KR20090028996A (en) 2007-09-17 2007-09-17 Coupling structure of hard disk drive using stud

Publications (2)

Publication Number Publication Date
US20090073842A1 US20090073842A1 (en) 2009-03-19
US8305707B2 true US8305707B2 (en) 2012-11-06

Family

ID=40454317

Family Applications (1)

Application Number Title Priority Date Filing Date
US12/186,665 Expired - Fee Related US8305707B2 (en) 2007-09-17 2008-08-06 Coupling structure using stud

Country Status (2)

Country Link
US (1) US8305707B2 (en)
KR (1) KR20090028996A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20120297402A1 (en) * 2011-05-20 2012-11-22 Jung Dong-Ha Cover for an optical disc drive and optical disc drive having the same
US20140126145A1 (en) * 2012-11-07 2014-05-08 Hon Hai Precision Industry Co., Ltd. Mounting apparatus for circuit board

Families Citing this family (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8533934B2 (en) 2011-04-28 2013-09-17 Entrotech, Inc. Method of assembling a hard disk drive
US8427787B2 (en) 2011-04-28 2013-04-23 Entrotech, Inc. Hard disk drives with improved exiting regions for electrical connectors and related methods
US8593760B2 (en) 2011-04-28 2013-11-26 Entrotech, Inc. Hard disk drives with electrical connectors comprising a flexible circuit extending through an opening in the base and related methods
US9466335B2 (en) 2011-04-28 2016-10-11 Entrotech, Inc. Hermetic hard disk drives comprising integrally molded filters and related methods
US8599514B2 (en) * 2011-04-28 2013-12-03 Entrotech, Inc. Stabilization of components within hard disk drives and related methods
US8837080B2 (en) 2011-04-28 2014-09-16 Entrotech, Inc. Hard disk drives with composite housings and related methods
US9190115B2 (en) 2011-04-28 2015-11-17 Entrotech, Inc. Method of assembling a disk drive
EP3134898A4 (en) 2014-04-22 2017-12-13 Entrotech, Inc. Re-workable sealed hard disk drives, cover seals therefor, and related methods
WO2015191479A1 (en) 2014-06-09 2015-12-17 Entrotech, Inc. Laminate-wrapped hard disk drives and related methods
US9601161B2 (en) 2015-04-15 2017-03-21 entroteech, inc. Metallically sealed, wrapped hard disk drives and related methods

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20020054453A1 (en) * 2000-11-06 2002-05-09 Seagate Technology Llc Disc drive bottom mounting through a shield plate
US6466400B1 (en) * 2000-01-17 2002-10-15 Fujitsu Limited Magnetic disk drive capable of reducing noise at starting utilizing conjoining, damped washers to support shafts in the disk drive
US6519110B2 (en) * 1988-01-25 2003-02-11 Seagate Technologies Llc Disk drive pass-through connector
US20050174682A1 (en) * 2004-01-28 2005-08-11 Samsung Electronics Co., Ltd Housing for hard disk drive having structure to reduce flutter of disk
US20050259352A1 (en) * 2004-05-19 2005-11-24 Leclair Stephen P Bumper device for data storage apparatus
US7428122B2 (en) * 2003-09-03 2008-09-23 Hitachi Global Storage Technologies Netherlands B.V. Hermetically sealed disk drive with low height
US20080310277A1 (en) * 2007-06-18 2008-12-18 Kabushiki Kaisha Toshiba Storage device

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6519110B2 (en) * 1988-01-25 2003-02-11 Seagate Technologies Llc Disk drive pass-through connector
US6680813B2 (en) * 1988-01-25 2004-01-20 Seagate Technology Llc Disc drive having a printed circuit board port connector
US6466400B1 (en) * 2000-01-17 2002-10-15 Fujitsu Limited Magnetic disk drive capable of reducing noise at starting utilizing conjoining, damped washers to support shafts in the disk drive
US20020054453A1 (en) * 2000-11-06 2002-05-09 Seagate Technology Llc Disc drive bottom mounting through a shield plate
US6583949B2 (en) * 2000-11-06 2003-06-24 Seagate Technology Llc Disc drive bottom mounting through a shield plate
US7428122B2 (en) * 2003-09-03 2008-09-23 Hitachi Global Storage Technologies Netherlands B.V. Hermetically sealed disk drive with low height
US20050174682A1 (en) * 2004-01-28 2005-08-11 Samsung Electronics Co., Ltd Housing for hard disk drive having structure to reduce flutter of disk
US20050259352A1 (en) * 2004-05-19 2005-11-24 Leclair Stephen P Bumper device for data storage apparatus
US20080310277A1 (en) * 2007-06-18 2008-12-18 Kabushiki Kaisha Toshiba Storage device

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20120297402A1 (en) * 2011-05-20 2012-11-22 Jung Dong-Ha Cover for an optical disc drive and optical disc drive having the same
US8726301B2 (en) * 2011-05-20 2014-05-13 Toshiba Samsung Storage Technology Korea Corporation Cover for an optical disc drive and optical disc drive having the same
US20140126145A1 (en) * 2012-11-07 2014-05-08 Hon Hai Precision Industry Co., Ltd. Mounting apparatus for circuit board

Also Published As

Publication number Publication date
US20090073842A1 (en) 2009-03-19
KR20090028996A (en) 2009-03-20

Similar Documents

Publication Publication Date Title
US8305707B2 (en) Coupling structure using stud
US8345387B1 (en) Disk drive with transverse plane damper
US7633721B1 (en) Disk drive with an actuator latch having fixed, latching, and latch arm portions being a single component
US7106583B2 (en) Embedded type disk drive mounting structure
US8432641B1 (en) Disk drive with multi-zone arm damper
US6473270B1 (en) Actuator shock snubber
US7961426B2 (en) Disk device
US20090284910A1 (en) Supporting and damping structure of hard disk drive
US20080024927A1 (en) Head gimbal assembly and hard disk drive having the same
US8102627B2 (en) Slider suspension assembly having limiter tab passing through load beam hole both within slider silhouette
US7206165B2 (en) Noise reducing apparatus for disk drive
WO1993006600A1 (en) Architecture for low-profile rigid disk drive
US6744606B2 (en) Dual plane actuator
US8018689B2 (en) Hard disk drive with thermal deformation prevention plate
US7511920B2 (en) Hard disk and spindle motor assembly
US7336447B2 (en) Disk device with inertia arm retaining portion stepped up from top yoke
US20100188781A1 (en) Magentic circuit for vcm and storage device
US20100328821A1 (en) Hard disk drive
US20060132976A1 (en) Data recording disk and hard disk drive having the same
US7626811B2 (en) Low profile disk drive unit
JP5241217B2 (en) Head stack assembly and hard disk drive including the same
US20090059434A1 (en) Arm blade, head stack assembly comprising the same, and hard disk drive comprising the head stack assembly
US8194357B2 (en) Hard disk drive
US8379344B2 (en) Airflow dispersion system
JP2007287234A (en) Disk drive and head assembly to be used therefor

Legal Events

Date Code Title Description
AS Assignment

Owner name: SAMSUNG ELECTRONICS CO., LTD., KOREA, REPUBLIC OF

Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:KIM, YU-SUNG;REEL/FRAME:021345/0436

Effective date: 20080602

AS Assignment

Owner name: SEAGATE TECHNOLOGY INTERNATIONAL, CAYMAN ISLANDS

Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:SAMSUNG ELECTRONICS CO., LTD.;REEL/FRAME:027774/0340

Effective date: 20111219

AS Assignment

Owner name: SEAGATE TECHNOLOGY INTERNATIONAL, CAYMAN ISLANDS

Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:SAMSUNG ELECTRONICS CO., LTD.;REEL/FRAME:027905/0581

Effective date: 20111219

REMI Maintenance fee reminder mailed
LAPS Lapse for failure to pay maintenance fees
STCH Information on status: patent discontinuation

Free format text: PATENT EXPIRED DUE TO NONPAYMENT OF MAINTENANCE FEES UNDER 37 CFR 1.362

FP Lapsed due to failure to pay maintenance fee

Effective date: 20161106